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基于COMSOL的Cu@Sn@Ag焊片真空瞬态液相扩散焊仿真研究
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作者 吴艳 欧阳佩旋 +2 位作者 徐红艳 张淑婷 董智超 《焊接技术》 2023年第2期71-76,I0008,共7页
在电力电子封装时,瞬态液相扩散焊过程中焊料层的应力分布是影响器件服役性能和使用寿命的重要因素。文中基于SiC芯片瞬态液相扩散焊的工况,利用有限元仿真软件COMSOL建立了Cu@Sn@Ag焊片用于回流焊接SIC芯片与DBC板的三维有限元模型,针... 在电力电子封装时,瞬态液相扩散焊过程中焊料层的应力分布是影响器件服役性能和使用寿命的重要因素。文中基于SiC芯片瞬态液相扩散焊的工况,利用有限元仿真软件COMSOL建立了Cu@Sn@Ag焊片用于回流焊接SIC芯片与DBC板的三维有限元模型,针对瞬态液相扩散焊,结合弹塑性变形等相关理论,系统研究了瞬态液相扩散焊的焊接工艺温度、焊接时间及焊接保压压力对Cu@Sn@Ag焊层应力分布及大小的影响。研究结果表明:焊接温度在240~260℃时,随着焊接温度的升高,焊后焊层峰值应力逐渐减小;当焊接温度处于260~280℃时,又略有升高,在260℃时应力最小;焊接保温时间在30~90 min时,随着焊接保温时间的延长,焊层的应力保持不变,90 min以上时焊层处的应力开始升高;当焊接保压压力为1~5 MPa时,随着保压压力的增大,焊层处的应力也初步增大。综合考虑器件服役性能的需求,Cu@Sn@Ag焊片用于回流焊接SiC芯片和DBC板,焊接温度以260℃为宜,焊接保温时间以30 min为宜,焊接保压压力以1 MPa为宜。 展开更多
关键词 瞬态液相扩散焊 Cu@Sn@Ag 接工艺 层应力
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Time-dependent effects in transient liquid phase bonding of 304L and Cp-Ti using an Ag-Cu interlayer
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作者 Saeed VAZIRIAN Mohammad MOSHKBAR BAKHSHAYESH Ali FARZADI 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2237-2255,共19页
One of the challenges for bimetal manufacturing is the joining process.Hence,transient liquid phase(TLP)bonding was performed between 304L stainless steel and Cp-Ti using an Ag-Cu interlayer with a thickness of 75μm ... One of the challenges for bimetal manufacturing is the joining process.Hence,transient liquid phase(TLP)bonding was performed between 304L stainless steel and Cp-Ti using an Ag-Cu interlayer with a thickness of 75μm for bonding time of 20,40,60,and 90 min.The bonding temperature of 860℃ was considered,which is under the β transus temperature of Cp-Ti.During TLP bonding,various intermetallic compounds(IMCs),including Ti_(5)Cr_(7)Fe_(17),(Cr,Fe)_(2)Ti,Ti(Cu,Fe),Ti_(2)(Cu,Ag),and Ti_(2)Cu from 304L toward Cp-Ti formed in the joint.Also,on the one side,with the increase in time,further diffusion of elements decreases the blocky IMCs such as Ti_(5)Cr_(7)Fe_(17),(Cr,Fe)_(2)Ti,Ti(Cu,Fe)in the 304L diffusion-affected zone(DAZ)and reaction zone,and on the other side,Ti_(2)(Cu,Ag)IMC transformed into fine morphology toward Cp-Ti DAZ.The microhardness test also demonstrated that the(Cr,Fe)_(2)Ti+Ti_(5)Cr_(7)Fe_(17) IMCs in the DAZ on the side of 304L have a hardness value of HV 564,making it the hardest phase.The maximum and minimum shear strength values are equal to 78.84 and 29.0 MPa,respectively.The cleavage pattern dominated fracture surfaces due to the formation of brittle phases in dissimilar joints. 展开更多
关键词 diffusion brazing transient liquid phase bonding dissimilar material joints microstructural evolution mechanical properties grade 2 titanium
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